Micellization of surfactant solutions is a ubiquitous phenomenon in natural systems and technological processes, and its theoretical description represents one of the cornerstone problems in the physical chemistry of colloidal systems. However, successful attempts of quantitative modeling confirmed by experimental data remains limited. We show, for the first time, that the dissipative particle dynamics with rigorously defined soft repulsion interaction and rigidity parameters is capable of predicting micellar self-assembly of nonionic surfactants. This is achieved due to a novel approach suggested for defining the interaction parameters by fitting to the infinite dilution activity coefficients of binary solutions formed by reference compoun...
The solubilization of hydrophobic components by surfactants that form microemulsion droplets has bee...
We study the self-organisation of aqueous surfactants in bulk phase, and the adsorption and self-org...
Control of the size and agglomeration of micellar systems is important for pharmaceutical applicatio...
Micelle formation in surfactant solutions is a self-assembly process governed by complex interplay o...
Dissipative particle dynamics simulation with novel model is applied to predict aggregation in ionic...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
Self-assembling properties of surfactant oligomers in an aqueous medium is simulated by dissipative ...
We use dissipative particle dynamics (DPD) to study micelle formation in alkyl sulfate surfactants, ...
The stability of colloidal dispersions can be severely affected by the presence of surfactants. Beca...
Using an atom based force field, molecular dynamics (MD) simulations of 54 dodecylphosphocholine (DP...
Using an atom based force field, molecular dynamics (MD) simulations of 54 dodecylphosphocholine (DP...
The McMillan-Mayer theory of multicomponent solutions is utilized to formulate a statistical-thermod...
Dissipative Particle Dynamics (DPD) is a mesoscale tool bridging the gap between microscopic atomis...
In this paper, a molecular dynamics simulation of surfactant self-assembly using realistic atomistic...
We present simulations of a purely athermal model for surfactant solutions. Using semi-grand-ensembl...
The solubilization of hydrophobic components by surfactants that form microemulsion droplets has bee...
We study the self-organisation of aqueous surfactants in bulk phase, and the adsorption and self-org...
Control of the size and agglomeration of micellar systems is important for pharmaceutical applicatio...
Micelle formation in surfactant solutions is a self-assembly process governed by complex interplay o...
Dissipative particle dynamics simulation with novel model is applied to predict aggregation in ionic...
International audienceA systematic approach to develop mesoscopic models for a series of linear anio...
Self-assembling properties of surfactant oligomers in an aqueous medium is simulated by dissipative ...
We use dissipative particle dynamics (DPD) to study micelle formation in alkyl sulfate surfactants, ...
The stability of colloidal dispersions can be severely affected by the presence of surfactants. Beca...
Using an atom based force field, molecular dynamics (MD) simulations of 54 dodecylphosphocholine (DP...
Using an atom based force field, molecular dynamics (MD) simulations of 54 dodecylphosphocholine (DP...
The McMillan-Mayer theory of multicomponent solutions is utilized to formulate a statistical-thermod...
Dissipative Particle Dynamics (DPD) is a mesoscale tool bridging the gap between microscopic atomis...
In this paper, a molecular dynamics simulation of surfactant self-assembly using realistic atomistic...
We present simulations of a purely athermal model for surfactant solutions. Using semi-grand-ensembl...
The solubilization of hydrophobic components by surfactants that form microemulsion droplets has bee...
We study the self-organisation of aqueous surfactants in bulk phase, and the adsorption and self-org...
Control of the size and agglomeration of micellar systems is important for pharmaceutical applicatio...